• Title/Summary/Keyword: 온배수

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Model Development for the Surface Discharge of Heated Water using Turbulence Model (난류모델을 이용한 표면 온배수 확산모형의 개발)

  • 최흥식;이길성
    • Proceedings of the Korea Water Resources Association Conference
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    • 1989.07a
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    • pp.113-114
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    • 1989
  • 원자력, 화력발전소, 제철소 등의 다양한 임해 공업시설로부터 방출되는 냉각용 온배수는 연안일대 해수의 열균형을 파괴시켜 생태계의 보존 및 환경관리에 좋지 못한 영향을 야기케 된다. 이러한 영향은 해안 또는 만내의 수중온도를 전반적으로 높일뿐 아니라 가동중단시 갑자기 수온을 떨어뜨려 해양생물상에 피해를 줄수도 있다. 또한 온배수에 의하여 온도가 상승된 해수가 취수구를 통하여 재순환되어 냉각기능의 부진을 초래하게되면 발전효율 또는 기계가동율을 저하시키게 된다. 이러한 측면에서 온배수의 확산에 대한 정성, 정량적인 예측은 환경영향평가, 취.배수구 설계조건의 산정 등에 매우 중요한 문제라 하겠다. 본 연구는 정지수역으로 유입하는 3차원 정상류 표면온배수 해석모형의 개발로서 개발된 모형의 수치실험을 통하여 온배수 확산의 물리적 특성을 규명한다. 지배방정식에 나타나는 Reynolds 응력항($)과 온도유동 프럭스항($)의 해석에서 필요한 난류모델은 k-$\varepsilon$ 모형에 난류 평균자승 온도유동($) 및 그 감쇄방정식을 추가한 4-방정식 모델로서 구성하였다. 아울러 3차원 정상류 모형에서 야기되는 타원형 방정식을 포물형 방정식의 형태로 전환하여 효과적으로 해석할 수 있도록 모델의 특성을 정리하였다. 본 모델의 검증을 위하여 Lal 및 Rajaratnam(1977)의 물리적 실험값과 비교해본 결과 온배수 거동의 물리적현상이 잘 일치하였다. 또한 McGuirk 및 Rodi(1979)에 의해 개발된 2-방정식 k-$\varepsilon$ 난류모형의 해석결과에 대하여 비교분석을 실시하였다.

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A Three-Dimensional Turbulence Model far the Thermal Discharge into Cross-Flow Field (가로흐름 수역으로 방출되는 3차원 온배수 난류모형)

  • 이남주;최흥식;허재영
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.7 no.2
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    • pp.148-155
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    • 1995
  • For an accurate prediction of the temperature Held induced by surface discharge of heated water into an ambient cross-flow field. a three-dimensional near-field numerical model using k-$\varepsilon$ turbulence clousure is developed Rather restricted as it is, the numerical results of the model agree well with the experimental data. The developed model simulates quite adequately the stratification, gravitational lateral spreading, and upward entrainment of thermal jet which cannot be simulated by a depth-integrated two-dimensional numerical model, as well as the interaction with cross-flow.

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Influence of Spa Sewage on the Water and Soil Pollution and Restoration I. Influence of Spa Sewage on the Pollution of Stream Water and Agricultural Land (온배수 유입 소형하천의 수질 및 토양오염과 회복에 관한 연구: I. 온배수가 인근 소하천과 농업 환경에 미치는 영향)

  • 정연태;이덕배;이경보;김미연;김백호;최민규;박승택
    • Korean Journal of Environmental Biology
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    • v.17 no.3
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    • pp.337-344
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    • 1999
  • This study was carried out to investigate the influence of spa sewage on water quality and chemical contents in the paddy soil along stream from 1997 to 1998. Concentration of $PO_4, SO_4, Cl, NH_{4}, Ca, Na$ and COD in the spa sewage were lower than standard for agricultural usage, and were lowered as the sewage flew to the into stream. The concentration of $SO_4$in spa sewage was over the criteria for agricultural usage in the inlet, but was lower than criteria for agricultural usage by inlet of non polluted stream water. Concentration of pollutants in the sediment of water channel were the highest in the inlet site. There were no pollutants accumulation in the paddy soil where spa sewage was irrigated. It may be resulted from nutrients uptake of rice plant and self purification of paddy soil. On the while, considering electric conductivity and nitrate in spa sewage, this results suggest that long-term irrigation of the spa sewage may be required general management with some decreasing fertilization.

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원자력발전소 온배수에 따른 우렁쉥이의 성장

  • 김성길;곽희상;강주찬
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2001.10a
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    • pp.331-332
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    • 2001
  • 발전소 등에서 배출되는 온배수는 해수의 수은을 변화시키며, 이로 인해 해양생태계에 많은 영향을 미친다 (Naylor, 1965). 발전소 온배수에 의해 27.2$^{\circ}C$~31.$0^{\circ}C$의 수온상승은 부착성 군집구조 가 우세하며, 37$^{\circ}C$이상의 수온에서는 수주고둥 및 따개비류를 제외한 모든 동ㆍ식물이 소멸한다 (Suresh et al., 1993). 또한, Ahamed et al. (1992)는 발전소 온배수의 영향을 받는 해역에서는 소수의 수주고둥과 남조류를 제외하고 해양생물 출현이 없었다고 보고하였다. (중략)

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The Estimation of Marine Environmental Capacity for the Reception of Cooling Water from HTPP in Southern Waters of Cheju Island using a 3-D Hydrodynamic Model (화순화력발전소 주변해역의 온배수 환경용량 산정)

  • Kim Gwang-Su;Choi Young-Chan;Lee Moon-Jin
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.3 no.3
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    • pp.3-12
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    • 2000
  • The field surveys and the measurements of seawater temperatures were conducted every month from 1997 to 1999, and the distributions of seawater temperature were simulated and reproduced by a three dimensional hydrodynamic numerical model over the southern waters of Cheju island. In order to estimate the marine environmental capacity for the reception of the heat loads of cooling water discharged from Hwasoon Thermal Power Plant(HTPP) in the study area, the simulations for predicting the situation of unfavorable environment in which marine organisms might not be satisfied with change in seawater temperature were peformed using a three dimensional hydrodynamic numerical model by controlling quantitatively the heat loads of cooling water from HTPP Currently, HTPP discharges cooling water of 35.9℃ into the sea as much as 112,800m³/day in summer. As the results of simulations, the more the heat loads from the power plant increase, the more increase the seawater temperatures around the water areas adjacent to the power plant. In case the heat loads of cooling water from HTPP become about 5 times as high as the present loads, seawater temperatures at near-shore waters adjacent to HTPP appear to be increased to the extent of 0.5℃ above the existing seawater temperature in summer. The marine environmental capacity for the reception of thermal discharge from HTPP is estimated to be about 530×10/sup 6/kcal/day which is equivalent to the increase of a factor of 2 in the temperature of cooling water without any change in the discharge rate of cooling water or which is equivalent to the increase of a factor of 4.6 in the discharge rate of cooling water without any change in the temperature of cooling water. Comparing the case of the increase in the discharge rate of cooling water with the case of the increase in the temperature of cooling water on the basis of the same heat loads of 530×10/sup 6/kal/day, the former case is expected to increase seawater temperature a little higher and to extend the area affected by heat loads a little broader.

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A Hybrid Model for Predicting Near and Far Field Thermal Discharge Mixing (근원역 온배수 혼합의 예측을 위한 결합모형)

  • 황인태;김덕호;이정렬
    • Proceedings of the Korean Society of Coastal and Ocean Engineers Conference
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    • 2003.08a
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    • pp.199-207
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    • 2003
  • 발전소 온배수와 같은 페열의 방류는 여타 방류와는 달리 방류량이 단위 호기당 20-50ton/s 가량으로 매우 크며, 따라서 그 영향을 받는 해역도 매우 크다는 점이 특징이다. 최근 국내에서 시도되고 있는 심층 온배수 방류는 주변수에 비해 밀도가 작은 제트나 플룸의 형성 후 급격한 부력상승과 밀도차에 의한 수평 부력 확장(lateral buoyant spread)이 준 지배적인 현상으로 하수장의 혼합에 비해 즘 더 복잡한 양상을 띄게 된다. (중략)

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고탁도 해역의 온배수 활용을 위한 탁도저감시스템 효과분석

  • Ha, Sin-Yeong;O, Cheol;Guk, Seung-Gi
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2018.05a
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    • pp.232-233
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    • 2018
  • 고탁도 해역에 배출되는 온배수를 활용하기 위해 탁도로 인한 열교환기의 오염부하가 줄어 들 수 있도록 탁도저감시스템을 시스템에 열교환기 이전단계에 추가하여 운전하였으며 탁도저감시스템으로 인한 탁도, 부유물질, 영양염류의 제거능 평가를 실시하였다. 평가결과 탁도개선시스템의 운전으로 인해 약 80%정도의 탁도가 저감 되는 것을 확인하였으며 부유물질 제거 효율은 약 13~29%정도였다. 기타 영양염류의 제거효율은 미미하였으나 본 시스템의 목적인 탁도저감을 위해서는 효과적인 시스템이라 판단된다.

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Analysis of 1MW Closed OTEC Cycle Using Thermal Effluent and Waste Heat (발전소 온배수를 이용한 1MW급 폐쇄형 해양온도차발전 성능해석)

  • Kim, Hyeon-Ju;Lee, Ho-Saeng;Jung, Dong-Ho;Moon, Deok-Soo
    • Journal of Advanced Marine Engineering and Technology
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    • v.34 no.4
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    • pp.470-476
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    • 2010
  • The thermodynamic performance of closed ocean thermal energy conversion (OTEC) cycle with 1 MW gross power was evaluated to obtain the basic data for the optimal design of OTEC. The basic thermodynamic model for OTEC is Rankine cycle and the thermal effluent from power plant was used for the heat source of evaporator. The cycle performance such as efficiency, heat exchanger capacity, etc. was analyzed on the temperature variation of thermal effluent. The saturated pressure of evaporator increased with respect to the increase of thermal effluent temperature, so the cycle efficiency increased and necessary capacity of evaporator and condenser decreased under 1 MW gross power. As the thermal effluent temperature increases about $15^{\circ}C$, the cycle efficiency increased approximately 44%. So, it was revealed that thermal effluent from power plant is important heat source for OTEC plant. Also, if there is an available waste heat, it can be transferred heat to the working fluid form the evaporator through heat exchanger and cycle efficiency will be increased.

The trend of Energy ICT in automated agriculture and EMS system for cooling water application in power plant (시설농업에서 에너지 ICT 와 발전소 온배수 활용을 위한 에너지관리시스템)

  • Hwang, Woo-jeong;Kim, Kwang-kyu
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.623-625
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    • 2015
  • Recently, the cooling water of power plant was included in RPS(Renewable Portpolio Standard) as water heat energy. Thus the trend of cooling water application is growing bigger for agriculture and fishing industry. Especially as energy consumption cost in agriculture and fishing industry is a vital element, the interests for energy efficiency is growing bigger. The advanced agriculture country like Netherlands is distributing diagnosis software to the farmers based on ICT diagnostic system for the efficient energy consumption and energy demand amounts depend on crops of cultivation in automated horticulture. Hereafter, in the preparation of the expansion of the automated agriculture domestically by the cooling water of power plant, we would like to propose the energy application case(Greenery) in the advanced countries abroad in agriculture and EMS system about the application of the cooling water in power plant.

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Thermal Effluent Diffusion and Flow Characteristics using the TGPS Buoy (TGPS 부이를 이용한 온배수 확산과 흐름 특성)

  • 박일흠;이연규;최정민
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2000.10a
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    • pp.614-617
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    • 2000
  • To get the maximum diffusion boundary of thermal effluent of Youngkwang Nuclear Power Plant, paths of TGPS Buoy and temperatures of surface water are obtained to 4 times at spring tide during 1 year. According to the paths of TGPS Buoy, the flumes of thermal effluent are moved about 12km from outlet to SW or WSW direction. After 3∼4 times of tidal period the waters are reached to Chilsan Island because the ebb flow is more predominant than the flood flow in this area. At the spring and fall season, a sudden drop of surface water temperature is detected around 5km radius from the outlet. At the summer season, it is measured about 10km. On the other hand the flumes are continuously cooled down by the atmosphere condition at winter season.

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